2.) A car is driving at constant angular speed along a 20m radius circular track. The car completes one revolution of the track in 10 seconds(i.e. the rotation period is 10 seconds). Calculate
(i) The tangent speed of the car.
(ii) The angular speed of the car.
(iii) The centripetal acceleration of the car.
(iv) The RPM of the car.
2.) A car is driving at constant angular speed along a 20m radius circular track. The...
2. A car is driving at constant angular speed along a 20 m radius circular track. The car completes one revolution of the track in 10 seconds. Calculate: (i) The (tangent) speed of the car. 12.6 m/s (ii) The angular speed of the car. 0.63 1/s or 0.63 rad/s (iii) The centripetal acceleration of the car. 7.9 m/s2 (iv) The RPM (i.e. revolutions per minute) of the car. 6 RPM THE ANSWERS ARE IN BOLD, COULD YOU PLEASE SHOW THE...
A car is going along a circular road at a constant speed. The radius of the curve is 290 m, and the car takes 1.7 minutes to complete one round. Calculate its centripetal acceleration in m/s2.
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A car is driving around a 700 foot radius - circular track with a centripetal acceleration of 1.07g (multiples of gravitation acceleration) at a speed of 47.7 m/s. If the car is now going at 3.0 m/s slower, at what maximum rate can the driver speed up by accelerating without causing a slide. I need help reaching the answer of 5.2 m/s.
4. A sprinter nuns at constant speed 9 m's around a circular track with a centripetal asselsration of magnitude 26m (a) What is the track 's radius?(b) What is the magnitude of angular velocity of the sprinter? (c) What is the magnitude of the sprinter's angular acceleration? (d) How long des it take to complete one revolution (this time is called "period of motion")? (e) How many revolutions per minute does the sprinter make?